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Implementation of colorless shutter-based free-space optical interconnections using ferroelectric liquid crystal spatial light modulators

机译:使用铁电液晶空间光调制器实现无色快门的自由空间光学互连

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A shutter-based free-space optical switching core has been proposed as a promising technology for constructing Storage Area Networks (SANs) over an optical network. A vital component of this switch architecture is the use of a spatial light modulator (SLM) which can enhance the SANs performance. New optical materials are utilized to raise the switching speed and ferroelectric liquid crystals (FLCs) or transparent lanthanum-modified lead zirconate titanate (PLZT) used as an SLM have been compared. Both are capable of reaching the 3 usec target, by either raising the temperature or switching voltage, which is acceptable for SANs since the performance is dominated, not so much by switching speed, but more by reliable robust switching throughput. A six-by-six free-space 12-channel multi-mode fiber ribbon switch system using one fixed wavelength has been implemented. The objective of this paper is to demonstrate that multiwavelength operation based on the CWDM band in each fiber can be implemented on the same shutter-based free-space optical switching architecture using a FLC SLM.
机译:已经提出了基于快门的自由空间光学切换核心作为在光网络上构建存储区域网络(SAN)的有希望的技术。该交换机架构的重要组成部分是使用空间光调制器(SLM),其可以增强SAN性能。新的光学材料用于提高开关速度和铁电液晶(FLC的)或用作SLM透明镧改性锆钛酸铅(PLZT)进行了比较。两者都是可抵3微秒目标,方法是将温度升高或切换电压,由于性能为主,与其说通过切换速度,但更可靠的通过健壮开关可以通过这是可以接受的SAN的。已经实现了使用一个固定波长的六六个自由空间12通道多模光纤带开关系统。本文的目的是证明基于每个光纤中的CWDM频带的多波长操作可以在相同的快门基的自由空间光学切换架上使用FLC SLM来实现。

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